Schlegel V L, Cotton T M
Department of Chemistry, Iowa State University, Ames 50011.
Anal Chem. 1991 Feb 1;63(3):241-7. doi: 10.1021/ac00003a010.
The relationship between surface-enhanced resonance Raman scattering (SERRS) intensity and the rate of deposition during silver-island film preparation was examined, using zinc tetraphenylporphine (ZnTPP) as the adsorbate. The effect of the deposition rate on the optical properties of the films at specific wavelengths was also analyzed. The data show that the film extinction (the term extinction is used rather than absorption because the spectra have not been corrected for reflection or scattering losses) increases exponentially at 514 and 458 nm as the deposition rate is decreased. SERRS intensities also increase exponentially at these two excitation wavelengths with a decrease in the deposition rate. The optical density is linearly related to the SERRS intensity, and maximal enhancement is observed for films with the greatest extinction at these excitation wavelengths. In contrast, neither the extinction at 406 nm nor the SERRS scattering intensities resulting from excitation at this wavelength differ substantially. The surface-enhanced Raman scattering (SERS) intensity and the electronic spectra of 4,4'-bipyridine (BP) adsorbed onto silver films as a function deposition rate were also examined. The behavior of the nonresonantly enhanced BP is comparable to that of the resonantly enhanced ZnTPP samples. The effects of the surface morphology, as determined from transmission electron micrographs of the films at various deposition rates, on the corresponding electronic spectra and SERS/SERRS spectra are described.
使用四苯基卟啉锌(ZnTPP)作为吸附质,研究了表面增强共振拉曼散射(SERRS)强度与银岛膜制备过程中沉积速率之间的关系。还分析了沉积速率对薄膜在特定波长下光学性质的影响。数据表明,随着沉积速率降低,薄膜消光(使用术语“消光”而非“吸收”,因为光谱未针对反射或散射损失进行校正)在514和458 nm处呈指数增加。在这两个激发波长下,SERRS强度也随着沉积速率的降低呈指数增加。光密度与SERRS强度呈线性相关,并且在这些激发波长下,对于消光最大的薄膜观察到最大增强。相比之下,406 nm处的消光以及该波长激发产生的SERRS散射强度均无显著差异。还研究了作为沉积速率函数的吸附在银膜上的4,4'-联吡啶(BP)的表面增强拉曼散射(SERS)强度和电子光谱。非共振增强的BP的行为与共振增强的ZnTPP样品的行为相当。描述了根据不同沉积速率下薄膜的透射电子显微镜图像确定的表面形态对相应电子光谱和SERS/SERRS光谱的影响。